Standout Papers
- Ionic-liquid materials for the electrochemical challenges of the future (2009)
- Energy applications of ionic liquids (2013)
- Challenges and prospects in the catalysis of electroreduction of nitrogen to ammonia (2019)
- A Roadmap to the Ammonia Economy (2020)
- Introduction: Ionic Liquids (2017)
- Use of Ionic Liquids for π-Conjugated Polymer Electrochemical Devices (2002)
- Pyrrolidinium Imides: A New Family of Molten Salts and Conductive Plastic Crystal Phases (1999)
- Vitrification as an approach to cryopreservation (1984)
- On the concept of ionicity in ionic liquids (2009)
- Ionic Liquids in Electrochemical Devices and Processes: Managing Interfacial Electrochemistry (2007)
- Hierarchical Mesoporous SnO2 Nanosheets on Carbon Cloth: A Robust and Flexible Electrocatalyst for CO2 Reduction with High Efficiency and Selectivity (2016)
- Lithium-doped plastic crystal electrolytes exhibiting fast ion conduction for secondary batteries (1999)
- Single-Boron Catalysts for Nitrogen Reduction Reaction (2019)
- Ionic liquids and their solid-state analogues as materials for energy generation and storage (2016)
- Electro-synthesis of ammonia from nitrogen at ambient temperature and pressure in ionic liquids (2017)
- Ionic Liquids—An Overview (2004)
- A Review of Ionic Liquid Lubricants (2013)
- Nitrogen reduction to ammonia at high efficiency and rates based on a phosphonium proton shuttle (2021)
- Identification and elimination of false positives in electrochemical nitrogen reduction studies (2020)
- Bioactives from fruit processing wastes: Green approaches to valuable chemicals (2016)
- Electroreduction of nitrogen with almost 100% current-to-ammonia efficiency (2022)
Immediate Impact
17 by Nobel laureates 35 from Science/Nature 285 standout
Citing Papers
Long-term continuous ammonia electrosynthesis
2024 StandoutNature
Water-hydroxide trapping in cobalt tungstate for proton exchange membrane water electrolysis
2024 StandoutScience
Works of Douglas R. MacFarlane being referenced
A Roadmap to the Ammonia Economy
2020 Standout
Intrinsically stable in situ generated electrocatalyst for long-term oxidation of acidic water at up to 80 °C
2019
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Douglas R. MacFarlane | 32233 | 23930 | 17501 | 846 | 64.9k | |
| Robert Schlögl | 26732 | 18225 | 48564 | 1.1k | 73.0k | |
| Alexis T. Bell | 24897 | 14713 | 31770 | 736 | 62.1k | |
| Sheng Dai | 16942 | 25557 | 41163 | 1.1k | 83.1k | |
| Maria Forsyth | 15372 | 22664 | 10089 | 812 | 41.2k | |
| Qiang Xü | 12873 | 22768 | 43568 | 637 | 75.8k | |
| Xinhe Bao | 19899 | 21991 | 43370 | 993 | 72.9k | |
| Masayoshi Watanabe | 18624 | 20121 | 7057 | 587 | 39.1k | |
| Xin Wang | 5930 | 38211 | 31067 | 1.0k | 71.5k | |
| Buxing Han | 18099 | 6618 | 17743 | 1.1k | 52.3k | |
| Lirong Zheng | 14587 | 35248 | 42939 | 1.1k | 87.5k |
All Works
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